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Numerical Analysis of Performance, Rotor Temperature Distributions, and Rotor Thermal Deformation of an R134a Screw Compressor

机译:R134A螺杆压缩机性能,转子温度分布和转子热变形的数值分析

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A numerical analysis is performed to systematically calculate the performance, rotor temperature distributions, and rotor thermal deformation of an R134a screw compressor. The analysis procedure includes three major steps. The first step calculates the efficiencies and the temperature- and pressure-time histories of the refrigerant during a compression cycle of the screw compressor. The calculation is performed based on a theoretical model, which considers the mass and energy conservation laws, the leakages through various paths, and the discharges of gas and oil. The heat transfer between gas and oil is also considered. The second step calculates the temperature distributions in the rotors by numerically solving the set of Helmholtz equations derived from the partial differential equations for transient heat conduction of the rotors. Each of the two rotors is subject to a periodic convective boundary condition and five steady boundary conditions. The third step calculates thermal deformations of rotors by a finite element method based on the calculated temperature distributions from the second step. The proposed theoretical models and numerical procedures are shown to be able to efficiently calculate the performance, rotor temperature distributions, and rotor thermal deformations. The calculated information is important and useful in the design of a refrigerant screw compressor.
机译:进行数值分析以系统地计算R134A螺杆压缩机的性能,转子温度分布和转子热变形。分析程序包括三个主要步骤。第一步计算制冷剂在螺杆压缩机的压缩循环期间制冷剂的效率和温度和压力 - 时历史。基于理论模型进行计算,该理论模型考虑了质量和节能法,通过各种路径的泄漏以及气体和油的放电。还考虑了气体和油之间的热传递。第二步骤通过用来自转子的瞬态热传导的部分微分方程源于偏微分方程的升级的亥姆霍兹方程来计算转子中的温度分布。两个转子中的每一个受到周期性的对流边界条件和五个稳态边界条件。第三步骤通过基于第二步骤的计算温度分布来计算转子的热变形。所提出的理论模型和数值程序被证明能够有效地计算性能,转子温度分布和转子热变形。计算的信息在制冷剂螺杆压缩机的设计中是重要的并且有用。

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